会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 31. 发明授权
    • Finned tube heat exchanger
    • 翅片管换热器
    • US5706886A
    • 1998-01-13
    • US666894
    • 1996-08-01
    • Jong-Woon Kim
    • Jong-Woon Kim
    • F28F1/32F28D1/04
    • F28F1/325Y10T29/4938
    • A finned tube heat exchanger is disclosed in which the structure thereof is simple, and the heat exchanging performance is increased. The heat exchanger has a plurality of fin plates arranged in parallel with one another, and a plurality of heat exchanger tubes extending through the fin plates. Each of the fin plates has a plurality of projected strips, and the strips include first to ninth rows of strips disposed in a parallel relationship. Each of the first and ninth rows of strips is formed of a trapezoidal strip and two parallelogrammic strips, each of the second to eighth rows of strips is a strip extending between openings disposed adjacent to one another in the longitudinal direction of the fin plate. The second to eighth rows of strips are disposed not to be spaced, and two sides of each of the second to eighth rows of strips provided with leg portions are curved to have the same curvature as that of the openings adjacent to the two sides.
    • 公开了一种翅片管式热交换器,其结构简单,并且提高了热交换性能。 热交换器具有彼此平行布置的多个翅片板,以及延伸穿过翅片板的多个热交换器管。 每个鳍板具有多个突出的条,并且条带包括以平行关系设置的第一至第九行条。 第一排和第九排条中的每一条由梯形条和两个平行四边形条形成,第二至第八行中的每一条是在翅板的纵向彼此相邻布置的开口之间延伸的条。 第二到第八排的条被设置成不间隔,并且设置有腿部的第二到第八行的每一个的两个侧面被弯曲成具有与邻近两侧的开口相同的曲率。
    • 32. 发明授权
    • Finned tube heat exchanger
    • 翅片管换热器
    • US5704420A
    • 1998-01-06
    • US691843
    • 1996-08-01
    • Jong-Woon Kim
    • Jong-Woon Kim
    • F28F1/32F28D1/04
    • F28F1/325
    • A finned tube heat exchanger is disclosed in which the structure thereof is simple, and the heat exchanging performance is increased. The heat exchanger has a plurality of fin plates arranged in parallel with one another, and a plurality of heat exchanger tubes extending through the fin plates. Each of the fin plates has a plurality of projected strips, and the strips include first to sixth rows of strips disposed in a parallel relationship. Each of the first and sixth rows of strips is formed of a trapezoidal strip and two parallelogrammic strips, each of the second and fifth rows of strips is formed of a trapezoidal strip, and each of the third and fourth rows of strips is formed of a rectangular strip.
    • 公开了一种翅片管式热交换器,其结构简单,并且提高了热交换性能。 热交换器具有彼此平行布置的多个翅片板,以及延伸穿过翅片板的多个热交换器管。 每个鳍板具有多个突出的条,并且条带包括以平行关系设置的第一至第六排条。 第一排和第六排条中的每一条由梯形条和两个平行四边形条形成,第二行和第五行中的每一条由梯形条形成,并且第三行和第四行中的每一行由 矩形条。
    • 33. 发明授权
    • Control method for restoring unusable area of disk
    • 恢复磁盘不可用区域的控制方法
    • US5608704A
    • 1997-03-04
    • US498918
    • 1995-07-06
    • Jong-woon Kim
    • Jong-woon Kim
    • G11B27/034G11B27/036G11B27/32G11B7/00
    • G11B27/329G11B27/036G11B2220/2529G11B27/034
    • A method for restoring an unused area of a disk using a disk play is provided. The method includes the steps of: erasing the data of an arbitrary track and continuously shifting the data of the next track to the empty track; reforming a UTOC related with the erased and shifted tracks; reforming again track information by combining the last empty track and an unused area after the data is shifted to the last track; and recording the reformed UTOC in the disk. Therefore, the unused area generated due to the limitation of track information provided from the UTOC can be used for re-recording, so that the disk can be used more efficiently.
    • 提供了使用盘播放来恢复盘的未使用区域的方法。 该方法包括以下步骤:擦除任意轨道的数据并将下一轨道的数据连续地移动到空轨道; 改革与擦除和转移的轨道相关的UTOC; 在数据被转移到最后一个轨道之后,通过组合最后的空轨道和未使用区域来再次重新跟踪信息; 并将改写后的UTOC记录在磁盘中。 因此,由于由UTOC提供的轨道信息的限制而产生的未使用区域可以用于重新记录,使得可以更有效地使用盘。
    • 34. 发明授权
    • Method of manufacturing inertial sensor
    • 制造惯性传感器的方法
    • US09212909B2
    • 2015-12-15
    • US13541279
    • 2012-07-03
    • Jong Woon KimJung Won Lee
    • Jong Woon KimJung Won Lee
    • G01C19/56G01P15/08G01C19/5769
    • G01C19/5769G01P15/0802
    • Disclosed herein is a method of manufacturing an inertial sensor. The method includes: (A) preparing a base substrate; (B) forming a depressed first concave part in one surface of the base substrate; (C) forming a mass body in the first concave part by filling a metal or a combination of a metal and a polymer (or a polymer matrix composite) therein; and (D) forming a depressed second concave part in one surface of the base substrate at an outer side of the mass body and forming a flexible part on an upper portion of the second concave part in the base substrate. The mass body formed of the metal or the combination of the metal and the polymer (or the polymer matrix composite) has high density, thereby making it possible to improve sensitivity of the inertial sensor.
    • 本文公开了一种制造惯性传感器的方法。 该方法包括:(A)制备基底; (B)在基底基板的一个表面上形成凹陷的第一凹部; (C)通过在其中填充金属或金属和聚合物(或聚合物基质复合材料)的组合来在第一凹部中形成质量体; 和(D)在所述质量体的外侧形成在所述基底基板的一个表面中的凹陷的第二凹部,并且在所述基底基板的所述第二凹部的上部形成柔性部。 由金属形成的质量体或金属和聚合物(或聚合物基质复合体)的组合具有高密度,从而可以提高惯性传感器的灵敏度。
    • 36. 发明授权
    • Inertial sensor for detecting angular velocity
    • 用于检测角速度的惯性传感器
    • US09052195B2
    • 2015-06-09
    • US13592096
    • 2012-08-22
    • Jung Eun NohSeung Heon HanJong Woon KimSung Jun LeeSeung Mo Lim
    • Jung Eun NohSeung Heon HanJong Woon KimSung Jun LeeSeung Mo Lim
    • G01C19/56G01C19/5684
    • G01C19/5684G01C19/56
    • Disclosed herein is an inertial sensor including: a membrane; first and second driving units provided in a first axis direction (an X axis direction) so as to be symmetrical to each other based on a predetermined point of the membrane to thereby vibrate while being expanded and contracted in the first axis direction; and third and fourth driving units provided in a second axis direction (a Y axis direction) perpendicular to the first axis direction so as to be symmetrical to each other based on a predetermined point of the membrane to thereby vibrate while being expanded and contracted in the second axis direction, wherein the first and second driving units have different vibration frequencies so that they vibrate while being expanded and contracted in the opposite manner and then vibrate while being expanded and contracted in the same manner.
    • 本文公开了一种惯性传感器,包括:膜; 第一驱动单元和第二驱动单元,其以第一轴方向(X轴方向)设置为基于膜的预定点彼此对称,从而在沿第一轴向方向膨胀和收缩的同时振动; 以及第三和第四驱动单元,其沿着垂直于第一轴线方向的第二轴线方向(Y轴方向)设置成基于膜的预定点彼此对称,从而在扩张和收缩的同时振动 第二轴方向,其中第一和第二驱动单元具有不同的振动频率,使得它们以相反的方式膨胀和收缩振动,然后以相同的方式在膨胀和收缩的同时振动。
    • 37. 发明授权
    • Inertial sensor
    • 惯性传感器
    • US08978470B2
    • 2015-03-17
    • US13438361
    • 2012-04-03
    • Jung Eun NohSeung Heon HanJong Woon KimJun LimSeung Hun HanMin Kyu Choi
    • Jung Eun NohSeung Heon HanJong Woon KimJun LimSeung Hun HanMin Kyu Choi
    • G01P15/08G01P15/105G01V7/04
    • G01P15/105G01V7/04
    • Disclosed herein is an inertial sensor. The inertial sensor includes a sensing unit and a driving-mass-position initialization module. The sensing unit includes a driving mass, a flexible board unit which displaceably supports the driving mass, and a support which supports the flexible board unit to allow the driving mass to move in a suspended state. The flexible board unit has driving electrodes which move the driving mass, and sensing electrodes which sense the movement of the driving mass. The driving-mass-position initialization module includes a position initialization member which reciprocates to initialize the position of the driving mass, and a coil unit which surrounds the position initialization member. An initialization-member-receiving depression is formed in the driving mass. The shape of the initialization-member-receiving depression corresponds to that of the position initialization member.
    • 这里公开了惯性传感器。 惯性传感器包括感测单元和驱动质量位置初始化模块。 感测单元包括驱动质量块,可移动地支撑驱动质量块的柔性板单元,以及支撑柔性板单元以允许驱动质量块在悬挂状态下移动的支撑件。 柔性板单元具有使驱动质量块移动的驱动电极和感测驱动质量块运动的检测电极。 驱动质量位置初始化模块包括位移初始化构件,其往复运动以初始化驱动质量块的位置;以及线圈单元,其围绕位置初始化构件。 在驾驶体中形成初始化构件接收凹部。 初始化构件接受凹部的形状对应于位置初始化构件的形状。
    • 38. 发明授权
    • Angular velocity sensor
    • 角速度传感器
    • US08763460B2
    • 2014-07-01
    • US13303932
    • 2011-11-23
    • Jong Woon KimMao MinyaoLin LiweiWon Kyu Jeung
    • Jong Woon KimMao MinyaoLin LiweiWon Kyu Jeung
    • G01C19/56
    • G01C19/5755
    • There is provided an angular velocity sensor, including: a flexible part connecting a fixing part to an oscillation unit; a driving unit formed on the flexible part or the oscillation unit to oscillate the oscillation unit; a sensing unit formed on the flexible part or the oscillation unit to sense a displacement of the oscillation unit according to an angular velocity input; a control piezoelectric element formed on the flexible part to control rigidity of a motion of the oscillation unit; and an impedance element electrically connected to the control piezoelectric element to apply impedance to the control piezoelectric element.
    • 提供了一种角速度传感器,包括:将固定部分连接到振荡单元的柔性部分; 驱动单元,形成在所述柔性部分或所述振荡单元上,以振荡所述振荡单元; 感测单元,形成在柔性部分或振荡单元上,以根据角速度输入感测振荡单元的位移; 控制压电元件,其形成在所述柔性部上,以控制所述振荡单元的运动的刚性; 以及与控制压电元件电连接以将阻抗施加到控​​制压电元件的阻抗元件。
    • 40. 发明申请
    • INERTIAL SENSOR
    • 惯性传感器
    • US20130220015A1
    • 2013-08-29
    • US13592096
    • 2012-08-22
    • Jung Eun NohSeung Heon HanJong Woon KimSung Jun LeeSeung Mo Lim
    • Jung Eun NohSeung Heon HanJong Woon KimSung Jun LeeSeung Mo Lim
    • G01C19/56
    • G01C19/5684G01C19/56
    • Disclosed herein is an inertial sensor including: a membrane; first and second driving units provided in a first axis direction (an X axis direction) so as to be symmetrical to each other based on a predetermined point of the membrane to thereby vibrate while being expanded and contracted in the first axis direction; and third and fourth driving units provided in a second axis direction (a Y axis direction) perpendicular to the first axis direction so as to be symmetrical to each other based on a predetermined point of the membrane to thereby vibrate while being expanded and contracted in the second axis direction, wherein the first and second driving units have different vibration frequencies so that they vibrate while being expanded and contracted in the opposite manner and then vibrate while being expanded and contracted in the same manner.
    • 本文公开了一种惯性传感器,包括:膜; 第一驱动单元和第二驱动单元,其以第一轴方向(X轴方向)设置为基于膜的预定点彼此对称,从而在沿第一轴向方向膨胀和收缩的同时振动; 以及第三和第四驱动单元,其沿着垂直于第一轴线方向的第二轴线方向(Y轴方向)设置成基于膜的预定点彼此对称,从而在扩张和收缩的同时振动 第二轴方向,其中第一和第二驱动单元具有不同的振动频率,使得它们以相反的方式膨胀和收缩振动,然后以相同的方式在膨胀和收缩的同时振动。